Home
Class 12
PHYSICS
Three moles of an ideal gas kept at a co...

Three moles of an ideal gas kept at a constant temperature of 300 K are compressed from a volume of 4 litre to 1 litre. Calculate the work done in the process. `(R = 8.31 J mol^-1 K^-1`)

Promotional Banner

Similar Questions

Explore conceptually related problems

0.5 mole of gas at temperature 300 K expands isothermally from an initial volume of 2.0L to final volume of 6.0L. What is the work done by the gas ? (R = 8.31 J mol^(-1) K^-(1)

One mole of an ideal gas at 300 K is expanded isothermally from an initial volume of 1 litre to 10 litre. The DeltaU for this process is (R = 2 cal K^-1 mol^-1) .

Three moles of an ideal gas are expanded isothermally from a volume of 300cm^3 to 2.5L at 300 K against a pressure of 1.9 atm. Calculate the work done in L atm and joules

1 litre of an ideal gas at 27 °C is heated at a constant pressure to 297 °C. The final volume is approximately

Two moles of an ideal gas are allowed to expand from a volume of 10 dm^3 to 2 m^3 at 300 K against a pressure of 101.325 kPa. Calcualte the work done.

One mole of an ideal gas is heated at constant pressure of 1 atmosphere form 0^@C to 100^@C the change in the internal energy is (R = 8 J/ mol K )

Three moles of an ideal gas are compressed isothermally and reversibly to a volume of 2L. The work done is 2.983 kj at 22^@C . Calculate the initial volume of the gas